target/arm: Use _ra versions of cpu_stl_data() in v7M helpers
[qemu/ar7.git] / tests / test-blockjob.c
blobb33f899873355de226de8da244f70b995f1abc73
1 /*
2 * Blockjob tests
4 * Copyright Igalia, S.L. 2016
6 * Authors:
7 * Alberto Garcia <berto@igalia.com>
9 * This work is licensed under the terms of the GNU LGPL, version 2 or later.
10 * See the COPYING.LIB file in the top-level directory.
13 #include "qemu/osdep.h"
14 #include "qapi/error.h"
15 #include "qemu/main-loop.h"
16 #include "block/blockjob_int.h"
17 #include "sysemu/block-backend.h"
19 static const BlockJobDriver test_block_job_driver = {
20 .job_driver = {
21 .instance_size = sizeof(BlockJob),
22 .free = block_job_free,
23 .user_resume = block_job_user_resume,
24 .drain = block_job_drain,
28 static void block_job_cb(void *opaque, int ret)
32 static BlockJob *mk_job(BlockBackend *blk, const char *id,
33 const BlockJobDriver *drv, bool should_succeed,
34 int flags)
36 BlockJob *job;
37 Error *errp = NULL;
39 job = block_job_create(id, drv, NULL, blk_bs(blk),
40 0, BLK_PERM_ALL, 0, flags, block_job_cb,
41 NULL, &errp);
42 if (should_succeed) {
43 g_assert_null(errp);
44 g_assert_nonnull(job);
45 if (id) {
46 g_assert_cmpstr(job->job.id, ==, id);
47 } else {
48 g_assert_cmpstr(job->job.id, ==, blk_name(blk));
50 } else {
51 g_assert_nonnull(errp);
52 g_assert_null(job);
53 error_free(errp);
56 return job;
59 static BlockJob *do_test_id(BlockBackend *blk, const char *id,
60 bool should_succeed)
62 return mk_job(blk, id, &test_block_job_driver,
63 should_succeed, JOB_DEFAULT);
66 /* This creates a BlockBackend (optionally with a name) with a
67 * BlockDriverState inserted. */
68 static BlockBackend *create_blk(const char *name)
70 /* No I/O is performed on this device */
71 BlockBackend *blk = blk_new(qemu_get_aio_context(), 0, BLK_PERM_ALL);
72 BlockDriverState *bs;
74 bs = bdrv_open("null-co://", NULL, NULL, 0, &error_abort);
75 g_assert_nonnull(bs);
77 blk_insert_bs(blk, bs, &error_abort);
78 bdrv_unref(bs);
80 if (name) {
81 Error *errp = NULL;
82 monitor_add_blk(blk, name, &errp);
83 g_assert_null(errp);
86 return blk;
89 /* This destroys the backend */
90 static void destroy_blk(BlockBackend *blk)
92 if (blk_name(blk)[0] != '\0') {
93 monitor_remove_blk(blk);
96 blk_remove_bs(blk);
97 blk_unref(blk);
100 static void test_job_ids(void)
102 BlockBackend *blk[3];
103 BlockJob *job[3];
105 blk[0] = create_blk(NULL);
106 blk[1] = create_blk("drive1");
107 blk[2] = create_blk("drive2");
109 /* No job ID provided and the block backend has no name */
110 job[0] = do_test_id(blk[0], NULL, false);
112 /* These are all invalid job IDs */
113 job[0] = do_test_id(blk[0], "0id", false);
114 job[0] = do_test_id(blk[0], "", false);
115 job[0] = do_test_id(blk[0], " ", false);
116 job[0] = do_test_id(blk[0], "123", false);
117 job[0] = do_test_id(blk[0], "_id", false);
118 job[0] = do_test_id(blk[0], "-id", false);
119 job[0] = do_test_id(blk[0], ".id", false);
120 job[0] = do_test_id(blk[0], "#id", false);
122 /* This one is valid */
123 job[0] = do_test_id(blk[0], "id0", true);
125 /* We can have two jobs in the same BDS */
126 job[1] = do_test_id(blk[0], "id1", true);
127 job_early_fail(&job[1]->job);
129 /* Duplicate job IDs are not allowed */
130 job[1] = do_test_id(blk[1], "id0", false);
132 /* But once job[0] finishes we can reuse its ID */
133 job_early_fail(&job[0]->job);
134 job[1] = do_test_id(blk[1], "id0", true);
136 /* No job ID specified, defaults to the backend name ('drive1') */
137 job_early_fail(&job[1]->job);
138 job[1] = do_test_id(blk[1], NULL, true);
140 /* Duplicate job ID */
141 job[2] = do_test_id(blk[2], "drive1", false);
143 /* The ID of job[2] would default to 'drive2' but it is already in use */
144 job[0] = do_test_id(blk[0], "drive2", true);
145 job[2] = do_test_id(blk[2], NULL, false);
147 /* This one is valid */
148 job[2] = do_test_id(blk[2], "id_2", true);
150 job_early_fail(&job[0]->job);
151 job_early_fail(&job[1]->job);
152 job_early_fail(&job[2]->job);
154 destroy_blk(blk[0]);
155 destroy_blk(blk[1]);
156 destroy_blk(blk[2]);
159 typedef struct CancelJob {
160 BlockJob common;
161 BlockBackend *blk;
162 bool should_converge;
163 bool should_complete;
164 } CancelJob;
166 static void cancel_job_complete(Job *job, Error **errp)
168 CancelJob *s = container_of(job, CancelJob, common.job);
169 s->should_complete = true;
172 static int coroutine_fn cancel_job_run(Job *job, Error **errp)
174 CancelJob *s = container_of(job, CancelJob, common.job);
176 while (!s->should_complete) {
177 if (job_is_cancelled(&s->common.job)) {
178 return 0;
181 if (!job_is_ready(&s->common.job) && s->should_converge) {
182 job_transition_to_ready(&s->common.job);
185 job_sleep_ns(&s->common.job, 100000);
188 return 0;
191 static const BlockJobDriver test_cancel_driver = {
192 .job_driver = {
193 .instance_size = sizeof(CancelJob),
194 .free = block_job_free,
195 .user_resume = block_job_user_resume,
196 .drain = block_job_drain,
197 .run = cancel_job_run,
198 .complete = cancel_job_complete,
202 static CancelJob *create_common(Job **pjob)
204 BlockBackend *blk;
205 Job *job;
206 BlockJob *bjob;
207 CancelJob *s;
209 blk = create_blk(NULL);
210 bjob = mk_job(blk, "Steve", &test_cancel_driver, true,
211 JOB_MANUAL_FINALIZE | JOB_MANUAL_DISMISS);
212 job = &bjob->job;
213 job_ref(job);
214 assert(job->status == JOB_STATUS_CREATED);
215 s = container_of(bjob, CancelJob, common);
216 s->blk = blk;
218 *pjob = job;
219 return s;
222 static void cancel_common(CancelJob *s)
224 BlockJob *job = &s->common;
225 BlockBackend *blk = s->blk;
226 JobStatus sts = job->job.status;
227 AioContext *ctx;
229 ctx = job->job.aio_context;
230 aio_context_acquire(ctx);
232 job_cancel_sync(&job->job);
233 if (sts != JOB_STATUS_CREATED && sts != JOB_STATUS_CONCLUDED) {
234 Job *dummy = &job->job;
235 job_dismiss(&dummy, &error_abort);
237 assert(job->job.status == JOB_STATUS_NULL);
238 job_unref(&job->job);
239 destroy_blk(blk);
241 aio_context_release(ctx);
244 static void test_cancel_created(void)
246 Job *job;
247 CancelJob *s;
249 s = create_common(&job);
250 cancel_common(s);
253 static void test_cancel_running(void)
255 Job *job;
256 CancelJob *s;
258 s = create_common(&job);
260 job_start(job);
261 assert(job->status == JOB_STATUS_RUNNING);
263 cancel_common(s);
266 static void test_cancel_paused(void)
268 Job *job;
269 CancelJob *s;
271 s = create_common(&job);
273 job_start(job);
274 assert(job->status == JOB_STATUS_RUNNING);
276 job_user_pause(job, &error_abort);
277 job_enter(job);
278 assert(job->status == JOB_STATUS_PAUSED);
280 cancel_common(s);
283 static void test_cancel_ready(void)
285 Job *job;
286 CancelJob *s;
288 s = create_common(&job);
290 job_start(job);
291 assert(job->status == JOB_STATUS_RUNNING);
293 s->should_converge = true;
294 job_enter(job);
295 assert(job->status == JOB_STATUS_READY);
297 cancel_common(s);
300 static void test_cancel_standby(void)
302 Job *job;
303 CancelJob *s;
305 s = create_common(&job);
307 job_start(job);
308 assert(job->status == JOB_STATUS_RUNNING);
310 s->should_converge = true;
311 job_enter(job);
312 assert(job->status == JOB_STATUS_READY);
314 job_user_pause(job, &error_abort);
315 job_enter(job);
316 assert(job->status == JOB_STATUS_STANDBY);
318 cancel_common(s);
321 static void test_cancel_pending(void)
323 Job *job;
324 CancelJob *s;
326 s = create_common(&job);
328 job_start(job);
329 assert(job->status == JOB_STATUS_RUNNING);
331 s->should_converge = true;
332 job_enter(job);
333 assert(job->status == JOB_STATUS_READY);
335 job_complete(job, &error_abort);
336 job_enter(job);
337 while (!job->deferred_to_main_loop) {
338 aio_poll(qemu_get_aio_context(), true);
340 assert(job->status == JOB_STATUS_READY);
341 aio_poll(qemu_get_aio_context(), true);
342 assert(job->status == JOB_STATUS_PENDING);
344 cancel_common(s);
347 static void test_cancel_concluded(void)
349 Job *job;
350 CancelJob *s;
352 s = create_common(&job);
354 job_start(job);
355 assert(job->status == JOB_STATUS_RUNNING);
357 s->should_converge = true;
358 job_enter(job);
359 assert(job->status == JOB_STATUS_READY);
361 job_complete(job, &error_abort);
362 job_enter(job);
363 while (!job->deferred_to_main_loop) {
364 aio_poll(qemu_get_aio_context(), true);
366 assert(job->status == JOB_STATUS_READY);
367 aio_poll(qemu_get_aio_context(), true);
368 assert(job->status == JOB_STATUS_PENDING);
370 job_finalize(job, &error_abort);
371 assert(job->status == JOB_STATUS_CONCLUDED);
373 cancel_common(s);
376 int main(int argc, char **argv)
378 qemu_init_main_loop(&error_abort);
379 bdrv_init();
381 g_test_init(&argc, &argv, NULL);
382 g_test_add_func("/blockjob/ids", test_job_ids);
383 g_test_add_func("/blockjob/cancel/created", test_cancel_created);
384 g_test_add_func("/blockjob/cancel/running", test_cancel_running);
385 g_test_add_func("/blockjob/cancel/paused", test_cancel_paused);
386 g_test_add_func("/blockjob/cancel/ready", test_cancel_ready);
387 g_test_add_func("/blockjob/cancel/standby", test_cancel_standby);
388 g_test_add_func("/blockjob/cancel/pending", test_cancel_pending);
389 g_test_add_func("/blockjob/cancel/concluded", test_cancel_concluded);
390 return g_test_run();